Top Tweets for #PIEZO2
📰Un estudio del @painchannels (@NeuroAlc) identifica un mecanismo clave del dolor crónico causado por lesiones nerviosas
Demuestra que #Piezo2 desempeña un rol esencial en la hipersensibilidad mecánica en un modelo de neuropatía periférica en ratones
https://t.co/NmCDY5vq16

Mechanically evoked neuronal activity via Piezo2 and Nav channels is essential for the development and structural maturation of mechanosensory end-organs underlying gentle touch. #Mechanotransduction
#Piezo2 https://t.co/jfCc0xIzis
🧠💩 Pain in the Gut: Fusobacterium varium bacteria triggers IBS symptoms by hijacking Piezo2 signaling #GutMicrobiome #Piezo2 #VisceralHypersensitivity #Neurogastroenterology https://t.co/4uhC9Z7L6k
#RecommendedReading 🗞️ Researchers have shown that mutations in the gene coding for the #PIEZO2 protein increase the sensitivity of pain receptors in mice 🐁
This suggests that PIEZO2 channels could serve as new drug targets for pain treatment 💥
👉 https://t.co/7h0LOF9CSe

A novel mechanism behind episodic neuropathic pain—the interaction between dynamic blood vessel movements and Piezo2 mechanoreceptors in sensory neurons #piezo2 #neuropathicpain #nociceptors #tbertalab https://t.co/W8Da2gBRYm
The versatility in biological processes and the #disparity in the #expression of #PIEZO1 and #PIEZO2 between #cardiovascular and #neuronal #cells are the major problems that hinder its potential as a #therapeutic #target!! @HaoYin20 @ChrStaehr #channels
https://t.co/qoTJLzbx7g

Sanchez-Carranza @GaryRLewin1 and collegues report in @Brain1878 that #Piezo2 voltage-block regulates mechanical pain sensitivity
https://t.co/pf2ELbSH3P
With @anagomisg and J Fernandez Trillo @NeuroAlc I wrote a commentary on this provocative finding
https://t.co/10RcrTLHkr

Postdoctoral position is available in my lab, to study lipid regulation of mechanically activated Piezo2 #ionchannels
Please retweet, and see lab website for details: https://t.co/L9iWbi9v9X
#Piezo2 as Pulmonary Microvascular #EndothelialCell Shear sensor
Piezo2, Not #Piezo1, downregulated in
1⃣EC + Hypoxia/TGFβ2
2⃣4 animal🐭🐭🐭🐷 #PulmonaryHypertension models
3⃣Human iPAH🫁EC
siRNA Piezo2->#EndMT
Daphne Merkus lab @ajpheartcirc 2022
https://t.co/0Y7pvo0tL0

#PhosphoLipaseD #Mechanotransduction
Selective inhibition of #Piezo2, not #Piezo1 in sensory neurons by (intracellular) #LysophosphatidicAcid #PhosphatidicAcid, PLD enzymatic product
A direct binding effect?
Optogenetic PLD
FIPI (PLD inhibitor)
Now, a role of PLD1/2 in endothelial shear sensing?😁
@MattGabrielleRU @RohacsTibor bioRxiv 2024
https://t.co/mdPVfl1Glp

「退屈な糊」#グリア細胞 が今、#消化管 でも興奮を巻き起こす。中心仮説は、���腸管細胞・免疫細胞・ #マイクロバイオーム 間のコミュニケーションを差配」。新技法で細胞マッピング、#PIEZO2 等遺伝子解析が進む。
https://t.co/59ZNdrbyHm
A new article featured in #PRF’s #PapersoftheWeek explores the potentiation of #PIEZO2 mechanically activated currents in sensory neurons mediates vincristine-induced mechanical hypersensitivity. https://t.co/FQQn9VD1qx
A new article featured in #PRF’s #PapersoftheWeek explores the potentiation of #PIEZO2 mechanically activated currents in sensory neurons mediates vincristine-induced mechanical hypersensitivity. https://t.co/I0VjegwHbw
#ANMS2023🔥
Fascinating talk, as always! @Beyderlab 👏
➡️#GutFeelings: Mechanosensing in GI tract
✅50-90% of #functionalGI patients have “Mechano-Pathologies”
✅Gut-innervating extrinsic #Piezo2+ #MechanosensitiveNeurons put #brakes on GI transit @ANMSociety @MayoClinicGIHep
@BeyderLab sharing his “Gut Feeling” on the importance of mechanical forces to execute GI function and highlighting this reference from the OG’s-Bayliss and Starling-who laid down the “law of the intestine” @ANMSociety @ENSP_mayo #ANMS23

Deeply grateful 🙏 for an amazing collaboration with @ardemp and @Alex_Chesler on #mechanosensing by #Piezo2 #ionchannels, on a study 🤔 in @CellCellPress that shows #GI mechanosensitive extrinsic #sensory #neurons putting the BRAKES on GI #motility https://t.co/ebB12jLyjN
So interesting 🧐 the old school dye fm1-43 that finds its way into #Mechanosensitive #cells depends on #piezo2 activation
So happy to have been a part of this project!
We showed that styryl dye, FM1-43 specifically labels #PIEZO2 activity and gives a direct readout of tactile stimulation of hairy skin.
📰 @NeuroCellPress
https://t.co/b0hj9sGm79
#Neuron #Mechanoreceptor @NeuralCell

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